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[ subject:"Business Administration, General." ]
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A unified framework for approximatio...
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Vroblefski, Mark.
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A unified framework for approximation of general manufacturing and telecommunication networks.
紀錄類型:
書目-語言資料,印刷品 : Monograph/item
正題名/作者:
A unified framework for approximation of general manufacturing and telecommunication networks./
作者:
Vroblefski, Mark.
面頁冊數:
207 p.
附註:
Adviser: R. Ramesh.
Contained By:
Dissertation Abstracts International61-09A.
標題:
Business Administration, General. -
電子資源:
http://pqdd.sinica.edu.tw/twdaoapp/servlet/advanced?query=9987111
ISBN:
0599939036
A unified framework for approximation of general manufacturing and telecommunication networks.
Vroblefski, Mark.
A unified framework for approximation of general manufacturing and telecommunication networks.
- 207 p.
Adviser: R. Ramesh.
Thesis (Ph.D.)--State University of New York at Buffalo, 2000.
In this thesis, we develop a unified framework for approximating open and closed queueing serial systems under any general blocking protocol by extending and generalizing the approximation algorithm for open tandem queues under minimal blocking presented in Di Mascolo et al. [1996]. The proposed framework is based on decomposition. We develop decomposition structures and analysis algorithms for any general blocking system using the framework. The proposed algorithms have been extensively tested using simulations as a bench marking device. The results show that the proposed framework yields robust, reliable and accurate estimates of system characteristics, such as throughput and Work-In-Process inventory in a wide range of system configurations. The computational load is minimal.
ISBN: 0599939036Subjects--Topical Terms:
1017457
Business Administration, General.
A unified framework for approximation of general manufacturing and telecommunication networks.
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Thesis (Ph.D.)--State University of New York at Buffalo, 2000.
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In this thesis, we develop a unified framework for approximating open and closed queueing serial systems under any general blocking protocol by extending and generalizing the approximation algorithm for open tandem queues under minimal blocking presented in Di Mascolo et al. [1996]. The proposed framework is based on decomposition. We develop decomposition structures and analysis algorithms for any general blocking system using the framework. The proposed algorithms have been extensively tested using simulations as a bench marking device. The results show that the proposed framework yields robust, reliable and accurate estimates of system characteristics, such as throughput and Work-In-Process inventory in a wide range of system configurations. The computational load is minimal.
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We then extend the previous framework to general network structures, in particular, telecommunication networks. We define and model two types of node flow control. The first type is a minimal blocking flow control at each switching node where the finite buffer space at a node can be used for data packets awaiting service at the node or packets that have been serviced and are awaiting transmission. The second is a generalized foam of the minimal blocking case where the buffer space at a node can be used for incoming or outgoing packets but only a portion of the buffer space can be used for outgoing packets. We also model two network flow control methods: the leaky bucket scheme, and isarithmic systems.
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The proposed approximations for telecommunication networks have been extensively tested. The approximations were tested on several common network topologies and on a variety of system parameters. The telecommunication extensions proved to be reliable, robust approximations of simulation results for several performance measures across the wide range of systems tested.
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The entire unified framework has been proved to be a very useful set of tools for designers of manufacturing systems and telecommunication networks alike. The analysis has also proven the flexibility of the common underlying framework across a variety of applications.
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